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首页> 外文期刊>Earth System Dynamics >Stratospheric ozone and quasi-biennial oscillation (QBO) interaction with the tropical troposphere on intraseasonal and interannual timescales: a normal-mode perspective
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Stratospheric ozone and quasi-biennial oscillation (QBO) interaction with the tropical troposphere on intraseasonal and interannual timescales: a normal-mode perspective

机译:平流层臭氧和准两年期振荡(QBO)与热带对流层相互作用,对初始耕作和际时间尺度:正常模式的观点

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The Madden–Julian oscillation (MJO) is the main controller of the weather in the tropics on intraseasonal timescales, and recent research provides evidence that the quasi-biennial oscillation (QBO) influences the MJO interannual variability. However, the physical mechanisms behind this interaction are not completely understood. Recent studies on the normal-mode structure of the MJO indicate the contribution of global-scale Kelvin and Rossby waves. In this study we test whether these MJO-related normal modes are affected by the QBO and stratospheric ozone. The partial directed coherence method was used and enabled us to probe the direction and frequency of the interactions. It was found that equatorial stratospheric ozone and stratospheric zonal winds are connected with the MJO at periods of 1–2?months and 1.5–2.5?years. We explore the role of normal-mode interactions behind the stratosphere–troposphere coupling by performing a linear regression between the MJO–QBO indices and the amplitudes of the normal modes of the atmosphere obtained by projections on a normal-mode basis using ERA-Interim reanalysis data. The MJO is dominated by symmetric Rossby modes but is also influenced by Kelvin and asymmetric Rossby modes. The QBO is mostly explained by westward-propagating inertio-gravity waves and asymmetric Rossby waves. We explore the previous results by identifying interactions between those modes and between the modes and the ozone concentration. In particular, westward inertio-gravity waves, associated with the QBO, influence the MJO on interannual timescales. MJO-related modes, such as Kelvin waves and Rossby waves with a symmetric wind structure with respect to the Equator, are shown to have significantly different dynamics during MJO events depending on the phase of the QBO.
机译:Madden-Julian振荡(MJO)是热带季节性时间尺度的热带天气的主要控制器,最近的研究提供了证据表明准双年生振荡(QBO)影响了MJO际变异性。然而,不完全理解这种相互作用背后的物理机制。最近关于MJO的正常模式结构的研究表明了全球范围和rossby波的贡献。在这项研究中,我们测试这些MJO相关的正常模式是否受到QBO和Stratospheric臭氧的影响。使用部分定向的相干方法并使我们能够探测相互作用的方向和频率。发现赤道平流层臭氧和平流层Zonal风在1-2个月和1.5-2.5的时期与MJO连接。通过使用ERA临时反射分析,通过在正常模式基础上进行正常模式基于突出的大气层的正常模式的线性回归来探讨平流层 - 对流层耦合背后的正常模式相互作用的作用数据。 MJO以对称的罗斯比模式为主,但也受到Kelvin和非对称罗斯比模式的影响。 QBO主要由西方传播惰性 - 重力波和不对称的罗斯比波来解释。我们通过识别这些模式与模式和臭氧浓度之间的交互来探索先前的结果。特别是,与QBO相关的向西惰性重力波影响MJO依赖于际时间尺度。与相对于赤道相对于赤道具有对称风结构的诸如Kelvin波和rossby波的MJO相关模式,根据QBO的相位,MJO事件期间具有显着不同的动态。

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